Amanote Research
Register
Sign In
Hybrid Mode-Locking in a 40 GHz Monolithic Quantum Dot Laser
doi 10.1109/cleoe-eqec.2009.5192635
Full Text
Open PDF
Abstract
Available in
full text
Date
June 1, 2009
Authors
E. V. Viktorov
P. Mandel
A. G. Vladimirov
M. Wolfrum
G. Fiol
M. Kuntz
D. Bimberg
Publisher
IEEE
Related search
Model for Mode Locking in Quantum Dot Lasers
Applied Physics Letters
Astronomy
Physics
Experimental Investigation of Different Regimes of Mode-Locking in a High Repetition Rate Passively Mode-Locked Semiconductor Quantum-Dot Laser
Optics Express
Optics
Atomic
Molecular Physics,
Emergence of Resonant Mode-Locking via Delayed Feedback in Quantum Dot Semiconductor Lasers
Optics Express
Optics
Atomic
Molecular Physics,
Monolithic Passively Mode-Locked Lasers Using Quantum-Dot or Quantum-Well Materials Grown on GaAs Substrates
Mode Competition in a Dual-Mode Quantum-Dot Semiconductor Microlaser
Physical Review A
A 40 GHz, 770 Fs Regeneratively Mode-Locked Erbium Fiber Laser Operating at 1.6 Μm
IEICE Electronics Express
Electronic Engineering
Condensed Matter Physics
Optical
Electrical
Magnetic Materials
Electronic
A 28-40 GHz DOUBLY BALANCED MONOLITHIC PASSIVE MIXER WITH a COMPACT IF EXTRACTION
Progress In Electromagnetics Research Letters
Optical
Electronic
Magnetic Materials
Quantum Dot Lasers: Directly Modulated Single‐Mode Tunable Quantum Dot Lasers at 1.3 Μm (Laser Photonics Rev. 14(3)/2020)
Laser and Photonics Reviews
Condensed Matter Physics
Optics
Molecular Physics,
Optical
Atomic
Magnetic Materials
Electronic
1.55 Μm InAs/GaAs Quantum Dots and High Repetition Rate Quantum Dot SESAM Mode-Locked Laser
Scientific Reports
Multidisciplinary